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通过激光脉冲整形对TiC-Fe进行选择性激光熔化:微观结构与力学性能

Selective Laser Melting of TiC-Fe via Laser Pulse Shaping: Microstructure and Mechanical Properties.

作者信息

Maurya Himanshu Singh, Kollo Lauri, Tarraste Marek, Juhani Kristjan, Sergejev Fjodor, Prashanth Konda Gokuldoss

机构信息

Department of Mechanical and Industrial Engineering, Tallinn University of Technology, Tallinn, Estonia.

Erich Schmid Institute of Materials Science, Austrian Academy of Sciences, Leoben, Austria.

出版信息

3D Print Addit Manuf. 2023 Aug 1;10(4):640-649. doi: 10.1089/3dp.2021.0221. Epub 2023 Aug 9.

Abstract

In the present study, TiC-Fe cermets were fabricated through selective laser melting (SLM) for the first time employing pulse wave using a pulse shaping technique and regular laser pulse wave. Two samples were fabricated each with adapting pulse shaping technique and regular laser pulse wave with varied laser peak power and exposure time to obtain an optimized parameter. The pulse shaping technique proves to be an optimal method for fabrication of the TiC-Fe-based cermet. The effect of the laser peak power and pulse shaping on the microstructure development was investigated through scanning electron microscopy and X-ray diffraction analysis. Two-phased microstructures revealed the distribution of TiC and Fe. A maximum hardness and fracture toughness of 1010 ± 65 MPa and 16.3 ± 1.7 MPa m, respectively, were observed for the pulsed-shaped samples illustrating that pulse shaping can be an effective way to avoid cracking in brittle materials processed by SLM.

摘要

在本研究中,首次通过选择性激光熔化(SLM),采用脉冲整形技术和常规激光脉冲波,制备了TiC-Fe金属陶瓷。使用脉冲整形技术和常规激光脉冲波分别制备了两个样品,并改变激光峰值功率和曝光时间以获得优化参数。结果表明,脉冲整形技术是制备TiC-Fe基金属陶瓷的最佳方法。通过扫描电子显微镜和X射线衍射分析,研究了激光峰值功率和脉冲整形对微观结构演变的影响。两相微观结构揭示了TiC和Fe的分布。对于脉冲形状的样品,观察到最大硬度和断裂韧性分别为1010±65MPa和16.3±1.7MPa m,这表明脉冲整形可以是避免通过SLM加工的脆性材料出现裂纹的有效方法。

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